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◆ Construction and Building Materials2025-11-12· Ettringite

Development of a novel SUHPC based on PC-CAC-C$ system: Rheology, early-age strength, and hydration kinetics

Jia He, Yuanshan She, Xuan Ling, H.J.H. Brouwers, Qingliang Yu

原始摘要(英文原文)· Original abstract
Achieving rapid setting, early-age strength and volumetric stability is critical for shotcrete used in repair applications. In this study, a novel sprayed ultra-high-performance concrete (SUHPC) incorporating a Portland cement–calcium aluminate cement–gypsum (PC–CAC–C$) ternary binder system is formulated to tackle challenges in rheology, shrinkage, and early-age strength. A series of SUHPC mixtures with varying C$/CAC ratios (0.25–1.0) and the addition of a 2 wt% alkali‑free accelerator were systematically investigated. QXRD, TGA, calorimetry, rheology, and SEM reveal that a C$/CAC ratio of 0.5 maximizes early ettringite formation, conferring a fourfold increase in thixotropy over the cast UHPC and achieving a 3 h compressive strength of 15.1 MPa. A stage-dependent synergy between the alkali-free accelerator and the PC–CAC–C$ system is identified: at early ages, the accelerator significantly enhances ettringite formation and accelerates the hydration of C 3 S and CA by introducing Al(OH) 4 - and SO 4 2- ; at later stages, it promotes strätlingite formation, mitigating CAC conversion of ternary system in SUHPC. Meanwhile, the ternary system provides intrinsic micro-expansion that offsets both accelerator-induced shrinkage and autogenous shrinkage of SUHPC, ensuring dimensional stability. This novel SUHPC achieves rapid setting, enhanced thixotropy, early strength, and micro-expansion, making it a promising candidate for large-scale shotcrete applications. • A high-early-strength (>20 MPa at 3 h) SUHPC based on PC-CAC-C$ system was developed. • Strätlingite formation is effectively promoted by Al 2 (SO 4 ) 3 based alkali-free accelerator. • SUHPC shows superior pumpability and sprayability thanks to its optimal thixotropy. • Synergistic mechanism of alkali-free accelerator and PC-CAC-C$ system is revealed.
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Development of a novel SUHPC based on PC-CAC-C$ system: Rheology, early-age strength, and hydration kinetics — 科研速览 Science Skim